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作 者:邢惠红[1] 陈寅杰[1] 王标兵[1] 胡国胜[1]
机构地区:[1]中北大学理学院,太原030051
出 处:《工程塑料应用》2010年第12期59-64,共6页Engineering Plastics Application
摘 要:采用熔融共混法制备了聚乳酸(PLA)/四针状氧化锌晶须(T-ZnOw)。用差示扫描量热仪研究了PJJA及PLA/T—ZnOw的非等温冷结晶行为;用Jeziomy法和Mo法对其非等温冷结晶动力学进行了分析研究,并计算了相关的结晶动力学参数。结果表明,Jeziorny法和Mo法均能很好地描述PLA及PLA/T-ZnOw的非等温冷结晶过程,且结果一致。Jeziomy法分析表明,初次结晶阶段PLA及PLA/T—ZnOw的Avrami指数n.值范围分别为4.22~5.43和3.11~4.80,而二次结晶阶段的Avrami指数n,值范围分别为3.10~4.66和2.69~5.57,说明T—ZnOw的加入改变了PLA的成核和晶体生长规律。Mo法分析表明,在相同的X(t)下,PLA/T—ZnOw的F(T)值整体大于PLA,T—ZnOw的加入降低了PLA的结晶速率。偏光显微镜观察结果显示,随着T—ZnOw的加入,PLA球晶尺寸减小,数目增多。The polylactic acid/tetrapod-like zinc oxide whiskers(PLA/T-ZnOw) was prepared by melt blending. The noniso- thermal cold crystallization behaviors of PLA and PLA/T-ZnOw were investigated by differential scanning calorimetry ( DSC ). The method of Jeziorny and Mo were employed to analyze the nonisothermal cold crystallization kinetics for PLA and PLA/T-ZnOw, and the related kinetic parameters were obtained. The results showed that both the two methods could well describe the nonisothermal cold crys- tallization process of PLA and PLA/T-ZnOw composites. The calculated Avrami index value n~ of PLA and PLA/T-ZnOw was 4.22 5.43 and 3.11 - 4.80 respectively at primary crystallization stage, while n2 was 3.10 - 4.66 and 2.69 - 5.57 respectively at seconda- ry crystallization stage, which indicated that the crystal growth pattern of PLA/T-ZnOw was changed because of the addition of T- ZnOw. The results of the method Mo showed that most of the values F(T) of PLA/T-ZnOw were greater than those of PLA at the same X( t), which suggested that the crystal rate decreased with the addition of T-ZnOw. The polarized optical microscopy was employed to observe the crystal morphology of PLA/T-ZnOw composites. The results of polarizing microscope showed that the crystal size of PLA decreased while the number of nucleus grew up with the addition of T-ZnOw, which indicated that T-ZnOw could promote the nucleating process of PLA.
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